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在分子水平上窥视离子液体的水混合物:电子顺磁共振光谱探测的微观性质。

Peek Inside the Water Mixtures of Ionic Liquids at Molecular Level: Microscopic Properties Probed by EPR Spectroscopy.

机构信息

International Tomography Center SB RAS, Institutskaya Street 3a, 630090 Novosibirsk, Russia.

N. N. Vorozhtsov Novosibirsk Institute of Organic Chemistry SB RAS, Lavrentiev Avenue 9, 630090 Novosibirsk, Russia.

出版信息

Int J Mol Sci. 2021 Nov 2;22(21):11900. doi: 10.3390/ijms222111900.

Abstract

Many ionic liquids (ILs) can be mixed with water, forming either true solutions or emulsions. This favors their applications in many respects, but at the same time might strongly alter their physicochemical properties. A number of methods exist for studying the macroscopic properties of such mixtures, whereas understanding their characteristics at micro/nanoscale is rather challenging. In this work we investigate microscopic properties, such as viscosity and local structuring, in binary water mixtures of IL [Bmim]BF in liquid and glassy states. For this sake, we use continuous wave and pulse electron paramagnetic resonance (EPR) spectroscopy with dedicated spin probes, located preferably in IL-rich domains or distributed in IL- and water-rich domains. We demonstrate that the glassy-state nanostructuring of IL-rich domains is very similar to that in neat ILs. At the same time, in liquid state the residual water makes local viscosity in IL-rich domains noticeably different compared to neat ILs, even though the overwhelming amount of water is contained in water-rich domains. These results have to be taken into account in various applications of IL-water mixtures, especially in those cases demanding the combinations of optimum micro- and macroscopic characteristics.

摘要

许多离子液体(ILs)可以与水混合,形成真溶液或乳液。这在许多方面都有利于它们的应用,但同时也可能强烈改变它们的物理化学性质。存在许多方法用于研究此类混合物的宏观性质,而理解其微观/纳米尺度的特征则颇具挑战性。在这项工作中,我们研究了在液态和玻璃态下二元水混合物中 IL [Bmim] BF 的微观性质,如粘度和局部结构。为此,我们使用连续波和脉冲电子顺磁共振(EPR)光谱仪,结合专用的自旋探针,优选位于 IL 丰富的区域或分布在 IL 和水丰富的区域中。我们证明,IL 丰富的区域的玻璃态纳米结构与纯 IL 非常相似。同时,在液态下,与纯 IL 相比,IL 丰富的区域中的残留水会使局部粘度明显不同,尽管绝大多数水都包含在水丰富的区域中。在 IL-水混合物的各种应用中,特别是在需要组合最佳微观和宏观特性的情况下,必须考虑这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/464c/8584414/f49e2bab75c3/ijms-22-11900-sch001.jpg

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